Tungsten coatings deposited on CFC tiles by the combined magnetron sputtering and ion implantation technique

被引:71
作者
Ruset, C.
Grigore, E.
Maier, H.
Neu, R.
Li, X.
Dong, H.
Mitteau, R.
Courtois, X.
机构
[1] EURATOM, MEdC, Natl Inst Laser Plasma & Radiat Phys, Bucharest 077125, Romania
[2] Max Planck Inst Plasma Phys, EURATOM Assoc, D-85748 Garching, Germany
[3] Univ Birmingham, Sch Engn, Birmingham B15 2TT, W Midlands, England
[4] CEA, EURATOM Assoc, DSM DRFC, St Paul Les Durance, France
关键词
D O I
10.1088/0031-8949/2007/T128/033
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
Combined magnetron sputtering and ion implantation (CMSII) is a deposition technique involving simultaneous magnetron sputtering and high energy ion bombardment of the coating during its growth. A high voltage pulse discharge ( U = 40 kV, tau = 20 mu s, f = 25 Hz) is superposed over the magnetron deposition and in this way, positive ions are accelerated to the components to be coated, bombarding initially the substrate and then the coating itself. In the framework of the ITER-like wall project this method was applied to produce nanostructured W coatings on the carbon fibre composite (CFC) substrate. These coatings have been characterized in terms of adhesion, thickness, structure and resistance to high thermal loads ( up to 23.5 MW m(-2)). Based on the results of these tests, which are presented in this paper, CMSII technology was selected for coating about 1100 tiles with a 10 mu m tungsten layer for the JET first wall and divertor.
引用
收藏
页码:171 / 174
页数:4
相关论文
共 16 条
[1]   From plasma immersion ion implantation to deposition: a historical perspective on principles and trends [J].
Anders, A .
SURFACE & COATINGS TECHNOLOGY, 2002, 156 (1-3) :3-12
[2]   Materials for the plasma-facing components of fusion reactors [J].
Bolt, H ;
Barabash, V ;
Krauss, W ;
Linke, J ;
Neu, R ;
Suzuki, S ;
Yoshida, N .
JOURNAL OF NUCLEAR MATERIALS, 2004, 329 :66-73
[3]   Development of tungsten coating for fusion applications [J].
Cambe, A ;
Gauthier, E ;
Layet, JM ;
Bentivegna, S .
FUSION ENGINEERING AND DESIGN, 2001, 56-57 :331-336
[4]   Surface characterization of CVD tungsten coating on molybdenum substrate [J].
Du, JH ;
Li, ZX ;
Liu, GJ ;
Zhou, H ;
Huang, CL .
SURFACE & COATINGS TECHNOLOGY, 2005, 198 (1-3) :169-172
[5]   High-heat-flux loading of tungsten coatings on graphite deposited by plasma spray and physical vapor deposition [J].
GarciaRosales, C ;
Deschka, S ;
Hohenauer, W ;
Duwe, R ;
Gauthier, E ;
Linke, J ;
Lochter, M ;
Mallener, WKWM ;
Plochl, L ;
Rodhammer, P ;
Salito, A .
FUSION TECHNOLOGY, 1997, 32 (02) :263-276
[6]   In situ investigation of the internal stress within the nc-Ti2N/nc-TiN nanocomposite coatings produced by a combined magnetron sputtering and ion implantation method [J].
Grigore, E ;
Ruset, C ;
Short, K ;
Hoeft, D ;
Dong, H ;
Li, XY ;
Bell, I .
SURFACE & COATINGS TECHNOLOGY, 2005, 200 (1-4) :744-747
[7]   Tungsten coating on JET divertor tiles for erosion/deposition studies [J].
Lehto, S ;
Likonen, J ;
Coad, JP ;
Ahlgren, T ;
Hole, DE ;
Mayer, M ;
Maier, H ;
Kolehmainen, J .
FUSION ENGINEERING AND DESIGN, 2003, 66-68 :241-245
[8]   Properties of tungsten coatings deposited onto fine grain graphite by different methods [J].
Maier, H ;
Luthin, J ;
Balden, M ;
Linke, J ;
Koch, F ;
Bolt, H .
SURFACE & COATINGS TECHNOLOGY, 2001, 142 :733-737
[9]   Performance of tungsten coatings as plasma facing components used in ASDEX Upgrade [J].
Maier, H ;
Kötterl, S ;
Krieger, K ;
Neu, R ;
Balden, M .
JOURNAL OF NUCLEAR MATERIALS, 1998, 258 :921-926
[10]   Tungsten:: an option for divertor and main chamber plasma facing components in future fusion devices [J].
Neu, R ;
Dux, R ;
Kallenbach, A ;
Pütterich, T ;
Balden, M ;
Fuchs, JC ;
Herrmann, A ;
Maggi, CF ;
O'Mullane, M ;
Pugno, R ;
Radivojevic, I ;
Rohde, V ;
Sips, ACC ;
Suttrop, W ;
Whiteford, A .
NUCLEAR FUSION, 2005, 45 (03) :209-218